物联网环境感知自适应认证与授权

A. Arfaoui, S. Cherkaoui, A. Kribèche, S. Senouci, Mohamed Hamdi
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引用次数: 14

摘要

无线通信、泛在传感、移动网络等技术的快速发展,为“物联网”时代的到来铺平了道路,“任何东西”都可以“随时随地”连接。然而,物联网的蓬勃发展仍然面临着各种需要解决的安全和隐私保护挑战。在这种无处不在的异构环境中,上下文条件动态且频繁地变化,因此需要有效的上下文感知机制来满足用户不断变化的需求。因此,在考虑动态环境变化的情况下,设计一种自适应的访问控制方案来远程控制智能设备显得至关重要。在本文中,我们提出了一种基于上下文感知属性的访问控制(CAABAC)方法,该方法将上下文信息与密文策略基于属性的加密(CP-ABE)相结合,以确保数据安全并提供自适应的上下文隐私。从安全的角度来看,所提出的方案满足安全需求,如机密性、上下文感知的隐私性和对密钥托管问题的弹性。性能分析证明了该方案与基准方案相比在存储、通信和计算成本方面的效率和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Context-Aware Adaptive Authentication and Authorization in Internet of Things
The rapid technological advancements in wireless communications, ubiquitous sensing and mobile networking have paved the way for the emergence of the Internet of Things (IoT) era, where “anything” can be connected “anywhere” at “anytime”. However, the flourish of IoT still faces various security and privacy preserving challenges that need to be addressed. In such pervasive and heterogeneous environment where the context conditions dynamically and frequently change, efficient and context-aware mechanisms are required to meet the users' changing needs. Therefore, it seems crucial to design an adaptive access control scheme in order to remotely control smart things while considering the dynamic context changes. In this paper, we propose a Context-Aware Attribute-Based Access Control (CAABAC) approach that incorporates the contextual information with the Ciphertext-Policy Attribute-based Encryption (CP-ABE) to ensure data security and provide an adaptive contextual privacy. From a security perspective, the proposed scheme satisfies the security requirements such as confidentiality, context-aware privacy, and resilience against key escrow problem. Performance analysis proves the efficiency and the effectiveness of the proposed scheme compared to benchmark schemes in terms of storage, communication and computational cost.
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